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作 者:Fengyi Xu Meihong Wang Chenyu Qiao Shujing Li Hai Wang Xiaolong Su 许凤怡;王美红;乔晨宇;李淑静;王海;苏晓龙
机构地区:[1]State Key Laboratory of Quantum Optics Technologies and Devices,Institute of Opto-Electronics,Shanxi University,Taiyuan 030006,China [2]Collaborative Innovation Center of Extreme Optics,Shanxi University,Taiyuan 030006,China
出 处:《Science Bulletin》2025年第6期876-881,共6页科学通报(英文版)
基 金:financially supported by the National Natural Science Foundation of China(12434015,11834010,and 62275145);the Fundamental Research Program of Shanxi Province(20210302121002);the Fund for Shanxi"1331 Project"Key Subjects Construction.
摘 要:Hybrid continuous-variable(CV)and discrete-variable(DV)entanglement is an essential quantum resource of hybrid quantum information processing,which enables one to overcome the intrinsic limitations of CV and DV quantum protocols.Besides CV and DV quantum variables,introducing more degrees of freedom provides a feasible approach to increase the information carried by the entangled state.Among all the degrees of freedom of photons,orbital angular momentum(OAM)has potential applications in enhancing the communication capacity of quantum communication and precision of quantum measurement.Here,we present the experimental preparation of hybrid entanglement carrying OAM,which involves three degrees of freedom including polarization,cat states,and OAM.By converting the wavefront of optical cat states with a q-plate,the OAM degree of freedom is introduced into the prepared hybrid entanglement between a polarization-encoded DV qubit and a cat-encoded CV qubit.Based on the measured topological charges l=0,+1,+2 and reconstructed Wigner functions of the output states,the hybrid entangled states carrying OAM with l=0,+1,+2 are confirmed with non-zero logarithmic negativities,respectively.Our work takes a crucial step towards extending the degree of freedom for hybrid entanglement,which provides a new quantum resource for hybrid quantum information processing.
关 键 词:ENTANGLEMENT Cat state Orbital angular momentum Hybrid entanglement
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